Comparison of Rheological Methods to Measure Grease Degradation

IF 3.1 3区 工程技术 Q2 ENGINEERING, MECHANICAL Lubricants Pub Date : 2023-10-31 DOI:10.3390/lubricants11110468
Alan Gurt, Michael Khonsari
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Abstract

In a previous paper, methods that have been used to quantify grease mechanical degradation were compared, finding that crossover stress is a practical method for estimating the cone penetration value of a grease using a small sample. This paper covers techniques that have not generally been applied to modeling grease degradation and indicates their usefulness in characterizing the state of a grease. Three methods are examined, each using a different flow profile: rotation, oscillation, and normal force/extension. It is found that crossover stress is likely still the best choice for estimating cone penetration, and a fast, practical method is introduced here. In addition, a procedure for evaluating pull-off force is provided that describes some of the stretching behavior experienced by grease in a rolling contact; this method can also be used as an estimate of cone penetration. Finally, the applications of a “start-up yield” measurement are covered, providing details about the significance of wall slip as well as an independent way of estimating cone penetration.
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测量油脂降解的流变学方法的比较
在之前的一篇论文中,对量化润滑脂机械退化的方法进行了比较,发现交叉应力是使用小样本估计润滑脂锥面穿透值的实用方法。本文涵盖了尚未普遍应用于油脂降解建模的技术,并指出了它们在表征油脂状态方面的有用性。研究了三种方法,每种方法使用不同的流型:旋转、振荡和法向力/延伸。结果表明,交叉应力仍然是估算锥突的最佳选择,并提出了一种快速实用的方法。此外,提供了一种评估拉脱力的程序,该程序描述了润滑脂在滚动接触中所经历的一些拉伸行为;这种方法也可以用来估计锥体穿透。最后,介绍了“启动产量”测量的应用,详细介绍了壁面滑移的重要性以及估算锥突的独立方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Lubricants
Lubricants Engineering-Mechanical Engineering
CiteScore
3.60
自引率
25.70%
发文量
293
审稿时长
11 weeks
期刊介绍: This journal is dedicated to the field of Tribology and closely related disciplines. This includes the fundamentals of the following topics: -Lubrication, comprising hydrostatics, hydrodynamics, elastohydrodynamics, mixed and boundary regimes of lubrication -Friction, comprising viscous shear, Newtonian and non-Newtonian traction, boundary friction -Wear, including adhesion, abrasion, tribo-corrosion, scuffing and scoring -Cavitation and erosion -Sub-surface stressing, fatigue spalling, pitting, micro-pitting -Contact Mechanics: elasticity, elasto-plasticity, adhesion, viscoelasticity, poroelasticity, coatings and solid lubricants, layered bonded and unbonded solids -Surface Science: topography, tribo-film formation, lubricant–surface combination, surface texturing, micro-hydrodynamics, micro-elastohydrodynamics -Rheology: Newtonian, non-Newtonian fluids, dilatants, pseudo-plastics, thixotropy, shear thinning -Physical chemistry of lubricants, boundary active species, adsorption, bonding
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